Systems and methods for disengaging wheels
Methods and systems are provided for coupling mechanism of a wheel. The coupling mechanism of a wheel includes a screw with a threaded portion, a block with an internal threaded portion, and a coupler mechanically coupled to the screw. The coupler has a radially inner surface configured to couple with a drive shaft and a radially outer surface configured to couple with a spindle, where the screw is configured to engage the coupler with the drive shaft when actuated in a first direction and disengage the coupler from the drive shaft when actuated in a second direction, opposite the first.
1. A wheel of a vehicle comprising:
a hub positioned at a radial center of the wheel;
a coupling mechanism including a spindle coupled to the hub, a coupler and a block, the coupler and the block circumferentially surrounded by the spindle, wherein the spindle and the wheel rotate in unison;
the coupler configured to move axially along a radially inner surface of the spindle between an engaged state of the coupling mechanism and a disengaged state of the coupling mechanism, wherein the radially inner surface of the coupler circumferentially surrounds a radially outer surface of a drive shaft in the engaged state and the coupler is not in contact with the drive shaft in the disengaged state; and
the block configured to engage a pin, the pin coupled at an axially inner end to the coupler and an axially outer end of the pin protruding from an axially outer surface of the spindle.
2. The wheel of claim 1 , wherein the block is positioned at an axially outer end of the spindle.
3. The wheel of claim 1 , wherein the coupling mechanism further includes a helical spring positioned axially between the block and the coupler.
4. The wheel of claim 3 , wherein the helical spring is compressed when the coupling mechanism is in the disengaged state and the helical spring is extended when the coupling mechanism is in the engaged state.
5. The wheel of claim 1 , wherein the spindle includes shaft ball bearings, positioned radially between the spindle and the drive shaft, and circumferentially surrounding and supporting the drive shaft.
6. The wheel of claim 1 , wherein axial movement of the pin results in corresponding axial movement of the coupler.
7. The wheel of claim 1 , wherein the block remains stationary when the coupling mechanism moves between the engaged state and the disengaged state.